Automatic CNC Revolving Blade Foam Cutting Machine | Full Range
1625 CNC Oscillating Knife Cutting Machine, 1600×2500 mm working area, ±0.1 mm cutting accuracy — configurable with oscillating knife, driven rotary knife, creasing wheel, pneumatic knife, milling and V-groove tool heads for flexible material processing.
Covers the complete range of cold-cutting solutions where knife method is matched to material type and production volume rather than forcing one technology across all applications. Aluminum bellows vacuum table with 9KW pump delivers full-surface adsorption for large-format composites, foam and packaging boards up to 30 mm thick.
Sample cutting on your own material confirms edge quality and thickness capability before commitment.
You’re now subscribed to price tracking for this product. We’ll notify you if the price drops.
Fast Delivery
Quick, reliable shipping to any location.
Free & easy returns
Return this item by mail or in store within 90 days for a full refund.
In-House Design Covering Knife and Laser Technologies — This 1600×2500 mm platform is engineered from the frame up by a single design team, ensuring that oscillating knife, driven rotary, and laser configurations share common motion components rather than being retrofitted onto unrelated frames.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | 1625 |
| Product Type | CNC Oscillating Knife Cutting Machine |
| Working Area | 1600×2500 mm |
| Tool Head Options | Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife |
| Cutting Speed | 0-2000 mm/s (basis to be confirmed on specific material) |
| Cutting Thickness | ≤ 30 mm |
| Cutting Accuracy | ±0.1 mm |
| Vacuum Pump | 9 kW |
| Vacuum Table | Aluminum bellows with full-surface adsorption |
| Control System | PLC control panel with dedicated packaging box structure design software |
| Servo Motors | Available with Panasonic, Delta, or Dorna options |
| Voltage Options | 110V, 220V, 380V (configuration to be confirmed per market) |
| Profile Formats | PLT, DXF, AI, PDF |
| Safety Devices | Infrared sensor device and emergency stop |
| Machine Size | 3300×2100×1350 mm |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging and Carton Sample Making | Corrugated board, greyboard, folding carton, PVC blister stock |
| Aerospace Composite Cutting | Carbon fiber prepreg, aramid honeycomb, thermal and acoustic insulation foam |
| Automotive and Rail Interior Parts | Headliners, floor carpets, battery insulation pads, sound insulation materials |
| Wind Power and New Energy | Wind turbine blade infusion mesh, core material preforms, battery insulation sheets |
| Sporting Goods and Leisure Equipment | Bicycle frame prepreg, helmet liners, surfboards, kayak components |
| Composites and Foam Fabrication | High-density cross-linked polyethylene, EVA, PTFE, rubber, fiberglass cloth |
Why "2000 mm/s" Means Nothing Without the Material in Hand
Cutting speed on a data sheet is a mechanical limit, not a production guarantee — real throughput depends entirely on the density and layer structure of what you are actually feeding the table.
I have stood on factory floors in Latin America where a machine rated for high-speed cutting stalled the entire production line because the operator loaded high-density cross-linked polyethylene instead of the standard EPE foam used during the factory demo. The tool frequency and feed rate had to be completely rewritten on the spot, costing two full nights of downtime while upstream and downstream stations sat idle [NEED_CITE: impact of material density variation on oscillating knife feed rates]. When buyers evaluate a CNC oscillating knife cutting machine full catalogue, the number that matters is not the maximum traverse speed but the speed at which your specific material yields a clean edge at your required daily volume.
Mapping Machine Families to Material Reality
The complete cutting equipment range is organized not by bed size alone but by what each configuration is built to cut. A buyer surveying the CNC oscillating knife cutting machine full catalogue will find that cold-cutting knife heads handle composites and foam without thermal damage, while laser systems address acrylic, textile, and sheet metal where edge sealing or vaporization is required. Matching the cutting method to the material before narrowing to a model family prevents the costly mistake of forcing one technology across incompatible substrates.
From Catalogue Entry to Verified Configuration
Moving from a catalogue listing to a confirmed order requires validating the tool head, vacuum zoning, and software workflow against the buyer’s actual production files and material stack. The aluminum bellows vacuum table with its 9 kW pump provides full-surface adsorption, but small-part cutting on thin gasket stock may require zoning adjustments to prevent material lift at high traverse speeds [NEED_CITE: vacuum table zoning requirements for small-format gasket cutting]. Every configuration must be specified per material and production volume rather than assumed from a generic line in a brochure.
How Core Parameters Translate to Production Outcomes
The ±0.1 mm cutting accuracy is achieved through PLC-controlled servo motion, which directly affects repeatability when cutting aerospace gaskets or nesting high-value carbon fiber prepreg where scrap cost is significant. The seven available tool heads — from oscillating knife to V-groove — allow a single platform to handle creasing on carton samples and milling on composite honeycomb without requiring a second machine. Software compatibility with PLT, DXF, AI, and PDF formats means a packaging designer’s existing structural files import directly into the dedicated box design module, eliminating a manual re-draw step. The 1600×2500 mm working area accommodates standard full-sheet carton and composite panel sizes, while the 30 mm cutting depth ceiling covers most foam and gasket stacks encountered in industrial production.
The Hidden Cost of a Mismatched Tool Head
Selecting an oscillating knife for a material that requires a driven rotary tool produces ragged edges on textiles or crushed cells in foam, forcing secondary trimming that negates any speed advantage. Conversely, running a pneumatic knife on thin PVC film can tear the material if the blade depth is not precisely calibrated to the substrate [NEED_CITE: tool head selection errors and edge quality degradation in digital cutting]. These mismatches are rarely visible during a factory demonstration on sample material but surface immediately once production begins on the buyer’s own stock.
Why Source This Range from a Single Manufacturer
In-house design and production spanning both knife and laser technologies mean a buyer can compare cutting methods on the same motion platform rather than evaluating unrelated machines from separate vendors. Tool head and table configurations are specified per material and production volume, not sold as a one-size-fits-all package. CCD camera positioning is available for printed contour work where registration marks must be tracked at production speed. Software compatibility and file format import are confirmed before the order is placed, not discovered during commissioning. Sample cutting on the buyer’s own material is performed before any commitment, so edge quality and thickness handling are verified facts rather than catalogue promises.
Documentation & Verification
- Machine specification sheet listing confirmed tool head and vacuum table configuration
- Electrical schematic with voltage and frequency matched to destination market
- Sample cutting report produced on buyer’s own material with edge photographs
- Software licence and file format compatibility note for PLT, DXF, AI, PDF workflows
- Factory test record documenting accuracy and repeatability before crate closure
- Operation and maintenance manual in selected control language
Installation, Commissioning & Support
- Foundation must support 3300×2100×1350 mm footprint with level tolerance for vacuum table sealing
- Dedicated circuit required matching confirmed 110V, 220V, or 380V supply with correct frequency
- Machine ships fully assembled; rigging plan needed for 9 kW vacuum pump separate handling
- First-run parameter tuning on buyer’s material conducted on-site during commissioning
- Operator training covers PLC panel navigation and packaging box structure design software
- Spare parts list includes oscillating knife blades, creasing wheels, and vacuum table seals
What to Prepare Before Requesting a Quote
Provide the material type, maximum thickness, and sheet dimensions you will be cutting, along with your target daily volume and the file formats your design team currently uses. Specify the local voltage and frequency standard, preferred control language, and whether your workflow includes printed contour registration. If your production involves materials outside standard corrugated or foam, sending a sample roll or sheet for test cutting will determine the correct tool head and feed parameters before a configuration is locked in.
Frequently Asked Questions
Q: How do I decide between knife cutting and laser cutting for my material?
A: Knife cutting preserves material integrity on composites, foam, and gaskets by avoiding thermal damage, while laser cutting seals edges on synthetics and handles sheet metal. The choice depends on whether your material tolerates heat and whether edge sealing is a benefit or a defect in your downstream process.
Q: Which machine family fits my production volume and material thickness?
A: Volume and thickness together determine the required tool head, vacuum hold-down capacity, and servo configuration. A buyer cutting 30 mm foam at high daily volume needs a different setup than one cutting 2 mm gasket stock intermittently, even if both use the same working area.
Q: What tool head do you recommend for my specific material?
A: The recommendation depends on material density, thickness, and edge quality requirements. Oscillating knife suits most foams and composites, driven rotary knife handles textiles, and creasing wheel addresses carton folding lines — all configurable on the same platform.
Q: Can one machine handle both packaging sample making and composite cutting?
A: Yes, the platform accepts multiple tool heads that can be swapped or configured together, and the dedicated packaging box structure design software runs alongside composite nesting workflows on the same PLC control panel.
Q: What voltage, plug, and control language options are available?
A: The system supports 110V, 220V, and 380V configurations with plug type and control language — including English, Russian, Italian, Chinese, and custom options — confirmed during the specification stage before production begins.
In-House Design Covering Knife and Laser Technologies — This 1600×2500 mm platform is engineered from the frame up by a single design team, ensuring that oscillating knife, driven rotary, and laser configurations share common motion components rather than being retrofitted onto unrelated frames.
Technical Specifications
| Parameter | Value |
|---|---|
| Model | 1625 |
| Product Type | CNC Oscillating Knife Cutting Machine |
| Working Area | 1600×2500 mm |
| Tool Head Options | Oscillating knife, Driven rotary knife, Creasing wheel, Kiss cutting tool, Pneumatic knife, Milling tool, V groove knife |
| Cutting Speed | 0-2000 mm/s (basis to be confirmed on specific material) |
| Cutting Thickness | ≤ 30 mm |
| Cutting Accuracy | ±0.1 mm |
| Vacuum Pump | 9 kW |
| Vacuum Table | Aluminum bellows with full-surface adsorption |
| Control System | PLC control panel with dedicated packaging box structure design software |
| Servo Motors | Available with Panasonic, Delta, or Dorna options |
| Voltage Options | 110V, 220V, 380V (configuration to be confirmed per market) |
| Profile Formats | PLT, DXF, AI, PDF |
| Safety Devices | Infrared sensor device and emergency stop |
| Machine Size | 3300×2100×1350 mm |
Application Suitability
| Application | Material or Output |
|---|---|
| Packaging and Carton Sample Making | Corrugated board, greyboard, folding carton, PVC blister stock |
| Aerospace Composite Cutting | Carbon fiber prepreg, aramid honeycomb, thermal and acoustic insulation foam |
| Automotive and Rail Interior Parts | Headliners, floor carpets, battery insulation pads, sound insulation materials |
| Wind Power and New Energy | Wind turbine blade infusion mesh, core material preforms, battery insulation sheets |
| Sporting Goods and Leisure Equipment | Bicycle frame prepreg, helmet liners, surfboards, kayak components |
| Composites and Foam Fabrication | High-density cross-linked polyethylene, EVA, PTFE, rubber, fiberglass cloth |
Why "2000 mm/s" Means Nothing Without the Material in Hand
Cutting speed on a data sheet is a mechanical limit, not a production guarantee — real throughput depends entirely on the density and layer structure of what you are actually feeding the table.
I have stood on factory floors in Latin America where a machine rated for high-speed cutting stalled the entire production line because the operator loaded high-density cross-linked polyethylene instead of the standard EPE foam used during the factory demo. The tool frequency and feed rate had to be completely rewritten on the spot, costing two full nights of downtime while upstream and downstream stations sat idle [NEED_CITE: impact of material density variation on oscillating knife feed rates]. When buyers evaluate a CNC oscillating knife cutting machine full catalogue, the number that matters is not the maximum traverse speed but the speed at which your specific material yields a clean edge at your required daily volume.
Mapping Machine Families to Material Reality
The complete cutting equipment range is organized not by bed size alone but by what each configuration is built to cut. A buyer surveying the CNC oscillating knife cutting machine full catalogue will find that cold-cutting knife heads handle composites and foam without thermal damage, while laser systems address acrylic, textile, and sheet metal where edge sealing or vaporization is required. Matching the cutting method to the material before narrowing to a model family prevents the costly mistake of forcing one technology across incompatible substrates.
From Catalogue Entry to Verified Configuration
Moving from a catalogue listing to a confirmed order requires validating the tool head, vacuum zoning, and software workflow against the buyer’s actual production files and material stack. The aluminum bellows vacuum table with its 9 kW pump provides full-surface adsorption, but small-part cutting on thin gasket stock may require zoning adjustments to prevent material lift at high traverse speeds [NEED_CITE: vacuum table zoning requirements for small-format gasket cutting]. Every configuration must be specified per material and production volume rather than assumed from a generic line in a brochure.
How Core Parameters Translate to Production Outcomes
The ±0.1 mm cutting accuracy is achieved through PLC-controlled servo motion, which directly affects repeatability when cutting aerospace gaskets or nesting high-value carbon fiber prepreg where scrap cost is significant. The seven available tool heads — from oscillating knife to V-groove — allow a single platform to handle creasing on carton samples and milling on composite honeycomb without requiring a second machine. Software compatibility with PLT, DXF, AI, and PDF formats means a packaging designer’s existing structural files import directly into the dedicated box design module, eliminating a manual re-draw step. The 1600×2500 mm working area accommodates standard full-sheet carton and composite panel sizes, while the 30 mm cutting depth ceiling covers most foam and gasket stacks encountered in industrial production.
The Hidden Cost of a Mismatched Tool Head
Selecting an oscillating knife for a material that requires a driven rotary tool produces ragged edges on textiles or crushed cells in foam, forcing secondary trimming that negates any speed advantage. Conversely, running a pneumatic knife on thin PVC film can tear the material if the blade depth is not precisely calibrated to the substrate [NEED_CITE: tool head selection errors and edge quality degradation in digital cutting]. These mismatches are rarely visible during a factory demonstration on sample material but surface immediately once production begins on the buyer’s own stock.
Why Source This Range from a Single Manufacturer
In-house design and production spanning both knife and laser technologies mean a buyer can compare cutting methods on the same motion platform rather than evaluating unrelated machines from separate vendors. Tool head and table configurations are specified per material and production volume, not sold as a one-size-fits-all package. CCD camera positioning is available for printed contour work where registration marks must be tracked at production speed. Software compatibility and file format import are confirmed before the order is placed, not discovered during commissioning. Sample cutting on the buyer’s own material is performed before any commitment, so edge quality and thickness handling are verified facts rather than catalogue promises.
Documentation & Verification
- Machine specification sheet listing confirmed tool head and vacuum table configuration
- Electrical schematic with voltage and frequency matched to destination market
- Sample cutting report produced on buyer’s own material with edge photographs
- Software licence and file format compatibility note for PLT, DXF, AI, PDF workflows
- Factory test record documenting accuracy and repeatability before crate closure
- Operation and maintenance manual in selected control language
Installation, Commissioning & Support
- Foundation must support 3300×2100×1350 mm footprint with level tolerance for vacuum table sealing
- Dedicated circuit required matching confirmed 110V, 220V, or 380V supply with correct frequency
- Machine ships fully assembled; rigging plan needed for 9 kW vacuum pump separate handling
- First-run parameter tuning on buyer’s material conducted on-site during commissioning
- Operator training covers PLC panel navigation and packaging box structure design software
- Spare parts list includes oscillating knife blades, creasing wheels, and vacuum table seals
What to Prepare Before Requesting a Quote
Provide the material type, maximum thickness, and sheet dimensions you will be cutting, along with your target daily volume and the file formats your design team currently uses. Specify the local voltage and frequency standard, preferred control language, and whether your workflow includes printed contour registration. If your production involves materials outside standard corrugated or foam, sending a sample roll or sheet for test cutting will determine the correct tool head and feed parameters before a configuration is locked in.
Frequently Asked Questions
Q: How do I decide between knife cutting and laser cutting for my material?
A: Knife cutting preserves material integrity on composites, foam, and gaskets by avoiding thermal damage, while laser cutting seals edges on synthetics and handles sheet metal. The choice depends on whether your material tolerates heat and whether edge sealing is a benefit or a defect in your downstream process.
Q: Which machine family fits my production volume and material thickness?
A: Volume and thickness together determine the required tool head, vacuum hold-down capacity, and servo configuration. A buyer cutting 30 mm foam at high daily volume needs a different setup than one cutting 2 mm gasket stock intermittently, even if both use the same working area.
Q: What tool head do you recommend for my specific material?
A: The recommendation depends on material density, thickness, and edge quality requirements. Oscillating knife suits most foams and composites, driven rotary knife handles textiles, and creasing wheel addresses carton folding lines — all configurable on the same platform.
Q: Can one machine handle both packaging sample making and composite cutting?
A: Yes, the platform accepts multiple tool heads that can be swapped or configured together, and the dedicated packaging box structure design software runs alongside composite nesting workflows on the same PLC control panel.
Q: What voltage, plug, and control language options are available?
A: The system supports 110V, 220V, and 380V configurations with plug type and control language — including English, Russian, Italian, Chinese, and custom options — confirmed during the specification stage before production begins.

商品评价
There are no reviews yet.